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Reciprocal regulation among TRPV1 channels and phosphoinositide 3-kinase in response to nerve growth factor.

Citation
Stratiievska, A., et al. “Reciprocal Regulation Among Trpv1 Channels And Phosphoinositide 3-Kinase In Response To Nerve Growth Factor.”. Elife.
Center University of Washington
Author Anastasiia Stratiievska, Sara Nelson, Eric N Senning, Jonathan D Lautz, Stephen Ep Smith, Sharona E Gordon
Keywords NGF, PI3K, PIP3, TRPV1, TRPV2, biochemistry, chemical biology, inflammation, molecular biophysics, none, structural biology
Abstract

Although it has been known for over a decade that the inflammatory mediator NGF sensitizes pain-receptor neurons through increased trafficking of TRPV1 channels to the plasma membrane, the mechanism by which this occurs remains mysterious. NGF activates phosphoinositide 3-kinase (PI3K), the enzyme that generates PI(3,4)P and PIP, and PI3K activity is required for sensitization. One tantalizing hint came from the finding that the N-terminal region of TRPV1 interacts directly with PI3K. Using two-color total internal reflection fluorescence microscopy, we show that TRPV1 potentiates NGF-induced PI3K activity. A soluble TRPV1 fragment corresponding to the N-terminal Ankyrin repeats domain (ARD) was sufficient to produce this potentiation, indicating that allosteric regulation was involved. Further, other TRPV channels with conserved ARDs also potentiated NGF-induced PI3K activity. Our data demonstrate a novel reciprocal regulation of PI3K signaling by the ARD of TRPV channels.

Year of Publication
2018
Journal
eLife
Volume
7
Date Published
12/2018
ISSN Number
2050-084X
DOI
10.7554/eLife.38869
Alternate Journal
Elife
PMID
30560783
PMCID
PMC6312403
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